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A New Method For Determining Coupled Heat And Mass Transfer Coefficients Between Air And Liquid Desiccant

机译:确定空气和液体干燥剂之间传热和传质耦合系数的新方法

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This paper presented the characteristic of liquid desiccant dehumidification based on NTU-Le model. The results showed that the Lewis number Le had little effect on air outlet humidity ratio during desiccant solution dehumidification process. A new method called h_D-Le separative evaluation method was developed for determining coupled heat and mass transfer coefficients between air and liquid desiccant, through which the heat and mass transfer coefficients between air and liquid desiccant were calculated to obtain from experimental inlet and outlet parameters of air and desiccant solution. The effects of the air volume flow rate, temperature, humidity ratio and the solution concentration, temperature on the Lewis number, heat and mass transfer coefficient were analyzed according to experimental data and the h_D-Le separative evaluation method. Based on the computation results, it was concluded that the Lewis number greatly depended on the operation parameters and conditions of the air and desiccant. In addition, the correlations of the heat and mass transfer coefficients were developed. The additional 74 groups of experiments validated the developed correlations by comparison of air/solution parameters change with the calculation data.
机译:本文介绍了基于NTU-Le模型的液体干燥剂除湿特性。结果表明,在干燥剂溶液除湿过程中,Lewis数Le对出气口湿度比影响很小。开发了一种新的称为h_D-Le分离评估方法,用于确定空气和液体干燥剂之间的传热和传质耦合系数,通过该方法计算空气和液体干燥剂之间的传热和传质系数,从而从实验入口和出口参数得出空气和干燥剂溶液。根据实验数据和h_D-Le分离评价方法,分析了风量,温度,湿度,溶液浓度,温度对路易斯数,传热传质系数的影响。根据计算结果可以得出结论,路易斯数在很大程度上取决于空气和干燥剂的运行参数和条件。此外,还建立了传热系数与传质系数之间的关系。通过将空气/溶液参数变化与计算数据进行比较,另外74组实验验证了已开发的相关性。

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